yes it can depending on the level of ionizing radiation
Element P (phosphorus) has a lower first ionization energy than element S (sulfur).
The first level ionization energy oif aluminium is 577,5 kJ/mol.All alkali metals have lower values for the ionization energy.
Niobium element has more than one electron to be removed, it will have more than one ionization Energy (IE) 1st ionization energy: 652.1 kJ mol-1,2nd ionization energy: 1381.7 kJ mol-1,3rd ionization energy: 2416 kJ mol-1
Potassium (K) has a lower ionization energy than sodium (Na).
As an example potassium has a lower first ionization energy than aluminum (Al).
The element with a higher first ionization energy than chlorine Cl is fluorine F. Fluorine is located to the left of chlorine in the periodic table, which means it has a smaller atomic radius and stronger nuclear attraction, requiring more energy to remove an electron.
The element that has a lower first ionization energy than aluminum (Al) is magnesium (Mg). Magnesium is one period above aluminum on the periodic table, and as you move down a group or family, the ionization energy tends to decrease.
No, fluorine has a higher ionization energy than chlorine. Fluorine is the most electronegative element in the periodic table, meaning it has a strong attraction for electrons and therefore requires more energy to remove an electron compared to chlorine.
Boron has a higher first ionization energy than lithium. This is because boron has one more proton in its nucleus than lithium, leading to increased nuclear charge and stronger attraction for its outermost electron.
Antimony has a greater ionization energy level than tellurium. Ionization energy is the energy required to remove an electron from an atom in the gaseous state. Antimony has a higher effective nuclear charge due to its smaller atomic size, resulting in a stronger attraction to its electrons compared to tellurium. This makes it more difficult to remove an electron from antimony, hence its higher ionization energy level.
Oxygen has a higher first ionization energy than carbon. This is because ionization energy increases across a period in the periodic table, and oxygen is located to the right of carbon in Group 16. As a result, oxygen's increased nuclear charge and smaller atomic radius lead to a stronger attraction between the nucleus and its electrons, requiring more energy to remove an electron.
yes because ionization energy increases up and to the left on the periodic table. and fluorine has the highest ionization energy because it is so close to becoming a noble gas it tears off electrons from everything to complete the octete